MAX2664EWS+ -40NC to +85NC 4 WLP MAX2664 MAX2665. Maxim Integrated Products 1

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1 1976; Rev ; 8/1 EVALUATION KIT AVAILABLE VHF/UHF Low-Noise Amplifiers General Description The MAX66 and MAX665 are ultra-compact LNAs for VHF/UHF applications. These devices incorporate a broadband LNA with an integrated bypass switch. The MAX66 covers the UHF frequency range from 7MHz to 86MHz, and the MAX665 covers the VHF frequency range from 75MHz to 3MHz. Each device has a zero-power bypass mode for improved high-signal-level handling conditions. Additionally, the output port is internally matched to 5I while a single external inductor is used to match the input port to 5I. The MAX66 and MAX665 are available in a -bump (.8mm x.8mm x.6mm), lead-free, wafer-level package (WLP). Smartphones/Handsets MP3 Players Home Audio/Video Portable Navigation Devices Automotive Applications S UHF and VHF Frequency Range MAX66: 7MHz to 86MHz MAX665: 75MHz to 3MHz S Low Noise Figure MAX66: 1.dB MAX665: 1.1dB S High Gain: 15dB S Zero-Power Bypass Mode S Single +.V to +3.5V Supply Voltage S Low Current: 3.3mA S Small Footprint:.8mm x.8mm S Thin Profile:.6mm Ordering Information MAX665EWS+ NC to +85NC WLP +Denotes a lead(pb)-free/rohs-compliant package. Features PART TEMP RANGE PIN-PACKAGE MAX66EWS+ NC to +85NC WLP Functional Diagram TOP SIDE VIEW + GND A1 MAX66 MAX665 A V CC RFIN B1 B RFOUT/CTRL Maxim Integrated Products 1 For pricing, delivery, and ordering information, please contact Maxim Direct at 18896, or visit Maxim s website at

2 VHF/UHF Low-Noise Amplifiers ABSOLUTE MAXIMUM RATINGS V CC to GND...-.3V to +3.6V Other Pins to GND V to (Operating V CC +.3V) Maximum RF Input Power... +1dBm Short-Circuit Duration: RFIN, RFOUT/CTRL... 1s Continuous Power Dissipation (T A = +7NC) WLP (derates 9.7mW/NC above +7NC)...776mW CAUTION! ESD SENSITIVE DEVICE Operating Temperature Range... NC to +85NC Junction Temperature...+15NC Storage Temperature Range... 5NC to +16NC Soldering Temperature (reflow)...+6nc Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. DC ELECTRICAL CHARACTERISTICS (MAX66 and MAX665 EV kits. V CC =.V to 3.5V, T A = NC to +85NC, no RF signals are applied, RFIN and RFOUT/CTRL are open circuit. Typical values are at V CC =.7V and T A = +5NC, unless otherwise noted.) (Note 1) PARAMETER CONDITIONS MIN TYP MAX UNITS Supply Voltage V Supply Current Digital Input Logic-High Digital Input Logic-Low Active mode 3.3 ma Bypass mode, logic-low = V 1 FA Digital Input Current FA.7 x V CC.3 x V CC V V AC ELECTRICAL CHARACTERISTICS (MAX66 EV kit. V CC =.V to 3.5V, T A = NC to +85NC, UHF f RFIN = 67MHz. Typical values are at V CC =.7V and T A = +5NC, unless otherwise noted.) (Note 1) MAX66 Power Gain Noise Figure PARAMETER CONDITIONS MIN TYP MAX UNITS Third-Order Input Intercept Point (IIP3) Input 1dB Compression Point Normal mode Bypass mode -3 Normal mode 1. Bypass mode 6 Normal mode (Note ) -1 Bypass mode (Note 3) +6 Normal mode Bypass mode +7 db db dbm dbm

3 AC ELECTRICAL CHARACTERISTICS (MAX665 EV kit. V CC =.V to 3.5V, T A = NC to +85NC, VHF f RFIN = 15MHz. Typical values are at V CC =.7V and T A = +5NC, unless otherwise noted.) (Note 1) MAX665 Power Gain Noise Figure PARAMETER CONDITIONS MIN TYP MAX UNITS Third-Order Input Intercept Point (IIP3) Input 1dB Compression Point Normal mode Bypass mode.5-3 Normal mode 1.1 Bypass mode 5.5 Normal mode (Note ) -1 Bypass mode (Note 5) +6 Normal mode -11 Bypass mode +6 Note 1: Min and max limits guaranteed by test at T A = +5NC and guaranteed by design and characterization at T A = NC and T A = +85NC. Note : Tone-1 = 67MHz (5dBm), Tone = 676MHz (5dBm). Note 3: Tone-1 = 67MHz (dbm), Tone = 676MHz (dbm). Note : Tone-1 = 15MHz (5dBm), Tone = 156MHz (5dBm). Note 5: Tone-1 = 15MHz (dbm), Tone = 156MHz (dbm). db db dbm dbm Typical Operating Characteristics (T A = +5 C, unless otherwise noted. MAX66 and MAX665 EV kits.) I CC vs. V CC, CTRL = V CC T A = C MAX66 toc I CC vs. V CC, CTRL = GND MAX66 toc I CC vs. V CTRL (V CC =.7V) MAX66 toc3 ICC (ma) T A = +5 C T A = +85 C ICC (µa) T A = C, +5 C, +85 C ICC (µa) CTRL DECREMENT CTRL INCREMENT V CTRL (V) 3

4 (T A = +5 C, unless otherwise noted. MAX66 and MAX665 EV kits.) S11 (db) MAX66 S Typical Operating Characteristics (continued) MAX66 toc GAIN (db) MAX66 GAIN vs. FREQUENCY T A = +5 C T A = +85 C T A = C MAX66 toc5 S1 (db) MAX66 S1 MAX66 toc6 S (db) MAX66 S MAX66 toc MAX66 S11 MAX66 toc8-1 MAX66 S1 MAX66 toc9 S11 (db) -1 S1 (db)

5 (T A = +5 C, unless otherwise noted. MAX66 and MAX665 EV kits.) S1 (db) MAX66 S Typical Operating Characteristics (continued) MAX66 toc1 S (db) MAX66 S MAX66 toc11 MAX665 S11 MAX66 toc MAX665 GAIN vs. FREQUENCY T A = C MAX66 toc13 1 S11 (db) -1-1 GAIN (db) T A = +5 C T A = +85 C S1 (db) MAX665 S1 MAX66 toc1 S (db) MAX665 S MAX66 toc

6 (T A = +5 C, unless otherwise noted. MAX66 and MAX665 EV kits.) S11 (db) MAX665 S11 6 Typical Operating Characteristics (continued) MAX66 toc16 S1 (db) MAX665 S1 6 MAX66 toc17 MAX665 S1 MAX66 toc18 MAX665 S MAX66 toc19 S1 (db) -1-1 S (db) GAIN vs. V CC MAX665 (15MHz) MAX66 toc.5. NOISE FIGURE vs. FREQUENCY MAX66 MAX66 toc1 GAIN (db) MAX66 (67MHz) NF (db) T A = +85 C T A = +5 C 11.5 T A = C

7 (T A = +5 C, unless otherwise noted. MAX66 and MAX665 EV kits.) NF (db) NOISE FIGURE vs. FREQUENCY MAX66 T A = +5 C T A = +85 C T A = C MAX66 toc NF (db) Typical Operating Characteristics (continued) NOISE FIGURE vs. FREQUENCY MAX665 T A = +85 C T A = +5 C T A = C MAX66 toc3 NF (db) NOISE FIGURE vs. FREQUENCY MAX665 T A = +85 C T A = +5 C T A = C MAX66 toc -9-1 IIP3 vs. V CC MAX665 (15MHz) MAX66 toc IIP3 vs. V CC MAX665 (15MHz) MAX66 toc6-7 IIP3 vs. TEMPERATURE MAX66 toc7 IIP3 (dbm) MAX66 (67MHz) IIP3 (dbm) MAX66 (67MHz) IIP3 (dbm) MAX665 (15MHz) MAX66 (67MHz) TEMPERATURE ( C) IIP3 (dbm) IIP3 vs. TEMPERATURE MAX66 (67MHz) MAX665 (15MHz) MAX66 toc8 IP1dB (dbm) IP1dB vs. V CC MAX66 (67MHz) BYPASS NORMAL MAX66 toc9 IP1dB (dbm) 1 5 IP1dB vs. V CC MAX665 (15MHz) BYPASS MAX66 toc3 3 NORMAL TEMPERATURE ( C)

8 (T A = +5 C, unless otherwise noted. MAX66 and MAX665 EV kits.) IP1dB (dbm) IP1dB vs. TEMPERATURE MAX66 (67MHz) BYPASS NORMAL Typical Operating Characteristics (continued) MAX66 toc31 IP1dB (dbm) IP1dB vs. TEMPERATURE MAX665 (15MHz) BYPASS NORMAL 5 1 MAX665 BYPASS TO NORMAL RESPONSE MAX66 toc33 MAX665 NORMAL TO BYPASS RESPONSE MAX66 toc3 MAX66 BYPASS TO NORMAL RESPONSE MAX66 toc35 5mV/div 5mV/div 1µs/div V CC =.7V, f IN = 15MHz, P IN = -3dBm MAX66 NORMAL TO BYPASS RESPONSE MAX66 toc36 5mV/div 5mV/div MAX66 toc3 µs/div V CC =.7V, f IN = 15MHz, P IN = -3dBm µs/div V CC =.7V, f IN = 67MHz, P IN = -3dBm µs/div V CC =.7V, f IN = 67MHz, P IN = -3dBm 8

9 TOP VIEW GND RFIN + A1 B1 MAX66 MAX665 WLP A B V CC RFOUT/CTRL Bump Configuration Bump Description BUMP NAME FUNCTION A1 GND Ground. Connect to the PCB ground plane with minimal trace inductance. A V CC Supply Voltage. Bypass to ground with a 1pF capacitor as close as possible to the IC. B1 RFIN RF Input. Requires an external matching inductor and DC-blocking capacitor. The nominal internal DC voltage is 75mV. B RFOUT/CTRL RF Output and Bypass Control (see the Applications Information section). RFOUT is internally matched to 5I and incorporates an internal DC-blocking capacitor. Detailed Description The are low-power LNAs designed for VHF/UHF applications. The devices feature an internal LNA bypass control mode for better linearity under high-input-signal power conditions. The devices are offered in a small WLP package. Input and Output Matching Only an inductor in series with a DC-blocking capacitor is needed to form the input-matching network. The Typical Application Circuit shows the recommended input-matching network. These values are optimized for the best simultaneous gain, noise figure, and return loss performance. Tables 1 and list typical device S-parameter values. The devices integrate an on-chip 5I output-matching network, eliminating the need for external matching components. 9

10 Table 1. MAX66 Typical Device S-Parameter at VCC =.7V, TA = +5NC, Z = 5I S11 S11 S1 S1 S1 S1 S S Table. MAX665 Typical Device S-Parameter at VCC =.7V, TA = +5NC, Z = 5I Table 3. MAX66 Simulated Device Noise Parameters at VCC =.7V, TA = +5NC, Z = 5I *r n is normalized. 1 S11 S11 S1 S1 S1 S1 S S FMIN (db) G OPT G OPT r n *

11 Table. MAX665 Typical Noise Parameters VCC =.7V, TA = +5NC, Z = 5I FMIN (db) G OPT G OPT r n * *r n is normalized Active Bypass Mode Control The devices RFOUT/CTRL pin is used to control the bypass mode of the LNA. When set to logic-high through an external 1kI resistor, the devices active mode is enabled. Conversely, when connected to logic-low, the devices bypass mode is enabled. An external DC-blocking capacitor should be used to isolate the control function of this dual-purpose pin (see the Typical Application Circuit). Applications Information A properly designed PCB is essential to any RF microwave circuit. Use controlled-impedance lines on all high-frequency inputs and outputs. Bypass VCC with decoupling capacitors located close to the device. For long VCC lines, it might be necessary to add additional decoupling capacitors. Locate these additional capacitors further away from the device package. Proper grounding of the GND pin is essential. If the PCB uses a topside RF ground, connect it directly to the GND pin. For a board where the ground is not on the component layer, connect the GND pin to the board with multiple vias close to the package. Refer to for the S-parameter download, EV kit schematic, gerbers, PADS layout file, and BOM information. Table 5. Logic Table PROCESS: SiGe BiCMOS Package Information For the latest package outline information and land patterns, go to Note that a +, #, or - in the package code indicates RoHS status only. Package drawings may show a different suffix character, but the drawing pertains to the package regardless of RoHS status. PACKAGE TYPE RFOUT/CTRL High Low PACKAGE CODE Chip Information OUTLINE NO. MODE Active Bypass LAND PATTERN NO. WLP WA

12 VHF/UHF Low-Noise Amplifiers RFIN (MAX66) 1nH (MAX665) 33nH (MAX66) 7pF (MAX665) pf GND RFIN 1pF MAX66 MAX665 V CC RFOUT Typical Application Circuit 1kI I.1µF I CTRL (BYPASS CONTROL) 1pF V CC 1µF RFOUT 1

13 REVISION NUMBER REVISION DATE DESCRIPTION Revision History PAGES CHANGED 8/1 Initial release Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. Maxim Integrated Products, 1 San Gabriel Drive, Sunnyvale, CA Maxim Integrated Products Maxim is a registered trademark of Maxim Integrated Products, Inc.

14 Mouser Electronics Authorized Distributor Click to View Pricing, Inventory, Delivery & Lifecycle Information: Maxim Integrated: MAX665EWS+T MAX665EWS+T1

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